College of Animal Science and Technology, Northwest A&F University, Yangling, China.
PLoS One. 2010 Oct 11;5(10):e13219. doi: 10.1371/journal.pone.0013219.
Canine hip dysplasia (HD) is a common polygenic trait characterized by hip malformation that results in osteoarthritis (OA). The condition in dogs is very similar to developmental dysplasia of the human hip which also leads to OA.
METHODOLOGY/PRINCIPAL FINDINGS: A total of 721 dogs, including both an association and linkage population, were genotyped. The association population included 8 pure breeds (Labrador retriever, Greyhounds, German Shepherd, Newfoundland, Golden retriever, Rottweiler, Border Collie and Bernese Mountain Dog). The linkage population included Labrador retrievers, Greyhounds, and their crosses. Of these, 366 dogs were genotyped at ∼22,000 single nucleotide polymorphism (SNP) loci and a targeted screen across 8 chromosomes with ∼3,300 SNPs was performed on 551 dogs (196 dogs were common to both sets). A mixed linear model approach was used to perform an association study on this combined association and linkage population. The study identified 4 susceptibility SNPs associated with HD and 2 SNPs associated with hip OA.
CONCLUSION/SIGNIFICANCE: The identified SNPs included those near known genes (PTPRD, PARD3B, and COL15A1) reported to be associated with, or expressed in, OA in humans. This suggested that the canine model could provide a unique opportunity to identify genes underlying natural HD and hip OA, which are common and debilitating conditions in both dogs and humans.
犬髋关节发育不良(HD)是一种常见的多基因特征,其特点是髋关节畸形导致骨关节炎(OA)。犬髋关节发育不良的情况与人类髋关节发育不良非常相似,后者也会导致 OA。
方法/主要发现:共对 721 只犬进行了基因分型,包括关联和连锁群体。关联群体包括 8 个纯种犬(拉布拉多猎犬、灵缇犬、德国牧羊犬、纽芬兰犬、金毛猎犬、罗威纳犬、边境牧羊犬和伯恩山犬)。连锁群体包括拉布拉多猎犬、灵缇犬及其杂交犬。其中,366 只犬在约 22000 个单核苷酸多态性(SNP)位点进行了基因分型,对 551 只犬进行了 8 条染色体上约 3300 个 SNP 的靶向筛查(196 只犬在两组中均有)。采用混合线性模型方法对该关联和连锁群体进行了关联研究。该研究鉴定了与 HD 相关的 4 个易感 SNP 和与髋关节 OA 相关的 2 个 SNP。
结论/意义:鉴定出的 SNP 包括那些靠近已知基因(PTPRD、PARD3B 和 COL15A1)的 SNP,这些基因已被报道与人类 OA 相关或在 OA 中表达。这表明犬模型可能为鉴定导致自然 HD 和髋关节 OA 的基因提供独特机会,这两种疾病在犬和人类中都是常见且致残的疾病。